2021-09-15 12:00:56 +02:00
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// FICHIER : Enum_geom.cp
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// This file is part of the Herezh++ application.
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//
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// The finite element software Herezh++ is dedicated to the field
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// of mechanics for large transformations of solid structures.
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// It is developed by Gérard Rio (APP: IDDN.FR.010.0106078.000.R.P.2006.035.20600)
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// INSTITUT DE RECHERCHE DUPUY DE LÔME (IRDL) <https://www.irdl.fr/>.
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//
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// Herezh++ is distributed under GPL 3 license ou ultérieure.
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//
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2023-05-03 17:23:49 +02:00
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// Copyright (C) 1997-2022 Université Bretagne Sud (France)
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2021-09-15 12:00:56 +02:00
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// AUTHOR : Gérard Rio
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// E-MAIL : gerardrio56@free.fr
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//
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// This program is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License,
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// or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty
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// of MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.
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// See the GNU General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program. If not, see <https://www.gnu.org/licenses/>.
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//
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// For more information, please consult: <https://herezh.irdl.fr/>.
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#include "Enum_geom.h"
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# include <iostream>
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using namespace std; //introduces namespace std
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#include <stdlib.h>
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#include "Sortie.h"
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//#ifdef SYSTEM_MAC_OS_X
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// #include <stringfwd.h> // a priori ce n'est pas portable
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//#el
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#if defined SYSTEM_MAC_OS_CARBON
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#include <stringfwd.h> // a priori ce n'est pas portable
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#else
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#include <string.h> // pour le flot en memoire centrale
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#endif
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#include <string>
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string Nom_geom (const Enum_geom id_geom)
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// Retourne le nom de la geometrie correspondant a l'identificateur
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// de type enumere id_geom
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{string result;
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switch (id_geom)
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{case RIEN_GEOM : result="RIEN_GEOM"; break;
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case TRIANGLE : result="TRIANGLE"; break;
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case QUADRANGLE : result="QUADRANGLE"; break;
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case TETRAEDRE : result="TETRAEDRE"; break;
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case PENTAEDRE : result="PENTAEDRE"; break;
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case HEXAEDRE : result="HEXAEDRE"; break;
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case TRIA_AXI : result="TRIA_AXI"; break;
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case QUAD_AXI : result="QUAD_AXI"; break;
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case SEGMENT : result="SEGMENT"; break;
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case SEG_AXI : result="SEG_AXI"; break;
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case POINT : result="POINT"; break;
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case POINT_CP : result="POINT_CP"; break;
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case POUT : result="POUT"; break;
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case PS1 : result="PS1"; break;
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default :
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cout << "\nErreur : valeur incorrecte du type Enum_geom !\n";
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cout << "NOM_GEOM(Enum_geom ) \n";
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Sortie(1);
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};
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return result;
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};
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Enum_geom Id_nom_geom (const string& nom_geom)
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// Retourne la variable de type enumere associe au nom
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// de geometrie nom_geom
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{ Enum_geom result;
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if ( nom_geom == "RIEN_GEOM") result=RIEN_GEOM;
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else if ( nom_geom == "TRIANGLE" ) result=TRIANGLE;
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else if ( nom_geom == "QUADRANGLE" ) result=QUADRANGLE;
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else if ( nom_geom == "TETRAEDRE" ) result=TETRAEDRE;
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else if ( nom_geom == "PENTAEDRE" ) result=PENTAEDRE;
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else if ( nom_geom == "HEXAEDRE" ) result=HEXAEDRE;
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else if ( nom_geom == "TRIA_AXI" ) result=TRIA_AXI;
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else if ( nom_geom == "QUAD_AXI" ) result=QUAD_AXI;
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else if ( nom_geom == "SEGMENT" ) result=SEGMENT;
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else if ( nom_geom == "SEG_AXI" ) result=SEG_AXI;
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else if ( nom_geom == "POINT" ) result=POINT;
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else if ( nom_geom == "POINT_CP" ) result=POINT_CP;
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else if ( nom_geom == "POUT" ) result=POUT;
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else if ( nom_geom == "PS1" ) result=PS1;
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else
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{ cout << "\nErreur : nom de geometrie '" <<nom_geom << " 'inconnu !\n";
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cout << "ID_NOM_GEOM(char* ) \n";
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Sortie(1);
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};
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return result;
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};
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// surcharge de la lecture
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istream & operator >> (istream & entree, Enum_geom & result)
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{ char nom_geom[35];
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entree >> nom_geom;
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result = Id_nom_geom ( nom_geom);
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return entree;
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};
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// surcharge de l'operator d'ecriture
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ostream & operator << (ostream & sort, const Enum_geom& a)
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{ // on ecrit la forme caractère
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sort << Nom_geom(a) << " ";
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return sort;
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};
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// Retourne le type de géométrie générique: POINT_G, LIGNE, SURFACE, VOLUME,
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// associée à l'Enum_geom
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Enum_type_geom Type_geom_generique(const Enum_geom id_geom)
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{ Enum_type_geom result;
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switch (id_geom)
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{ case RIEN_GEOM : result=RIEN_TYPE_GEOM; break;
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case TRIANGLE : result=SURFACE; break;
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case QUADRANGLE : result=SURFACE; break;
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case TETRAEDRE : result=VOLUME; break;
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case PENTAEDRE : result=VOLUME; break;
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case HEXAEDRE : result=VOLUME; break;
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case TRIA_AXI : result=SURFACE; break;
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case QUAD_AXI : result=SURFACE; break;
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case SEGMENT : result=LIGNE; break;
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case SEG_AXI : result=LIGNE; break;
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case POINT : result=POINT_G; break;
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case POINT_CP : result=POINT_G; break;
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case POUT : result=LIGNE; break;
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case PS1 : result=LIGNE; break;
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default :
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cout << "\nErreur : valeur incorrecte du type Enum_geom !\n";
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cout << "Type_geom_generique(const Enum_geom id_geom ) \n";
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Sortie(1);
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};
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return result;
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};
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// retourne vrai s'il s'agit d'un type axisymétrique
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bool TestEnum_geom_axisymetrique(const Enum_geom id_geom)
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{ bool result;
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switch (id_geom)
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{ case RIEN_GEOM : result=false; break;
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case TRIANGLE : result=false; break;
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case QUADRANGLE : result=false; break;
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case TETRAEDRE : result=false; break;
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case PENTAEDRE : result=false; break;
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case HEXAEDRE : result=false; break;
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case TRIA_AXI : result=true; break;
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case QUAD_AXI : result=true; break;
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case SEGMENT : result=false; break;
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case SEG_AXI : result=true; break;
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case POINT : result=false; break;
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case POINT_CP : result=false; break;
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case POUT : result=false; break;
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case PS1 : result=false; break;
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default :
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cout << "\nErreur : valeur incorrecte du type Enum_geom !\n";
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cout << "TestEnum_geom_axisymetrique(const Enum_geom id_geom ) \n";
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Sortie(1);
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};
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return result;
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};
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